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首页> 外文期刊>Scientific reports. >3D Binder-free MoSe2 Nanosheets/Carbon Cloth Electrodes for Efficient and Stable Hydrogen Evolution Prepared by Simple Electrophoresis Deposition Strategy
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3D Binder-free MoSe2 Nanosheets/Carbon Cloth Electrodes for Efficient and Stable Hydrogen Evolution Prepared by Simple Electrophoresis Deposition Strategy

机译:3D通过简单的电泳沉积策略制备的无粘合剂MOSE2纳米片/碳布电极,用于高效且稳定的氢气进化

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We successfully developed a simple electrophoretic deposition (EPD) method to decorate the MoSe2 nanosheets on the carbon fiber surface of carbon cloth (MoSe2/CC). With this process, MoSe2 nanosheets can be uniformly and tightly deposited on this flexible conductor to form a 3D binder-free electrode for hydrogen evolution reaction (HER). The film thickness can also be controlled by the EPD time. Directly used as binder-free electrodes for hydrogen evolution reaction, the as-prepared 3D MoSe2/CC samples exhibit excellent catalytic activity in an acidic electrolyte (21 mA/cm(2) at an over-potential of 250 mV). Variation of MoSe2 nanosheets film thickness in the electrodes could affect the catalytic activity, and it was found that the MoSe2/CC sample prepared with 60 min EPD time shows the highest HER activity amongst these different thickness samples. Moreover, stability tests though long-term potential cycles (no degradation after 1000 continuous potential cycles) and extended electrolysis confirm the exceptional durability of the catalyst. This development offers us an attractive and active 3D electrode for electrochemical water splitting.
机译:我们成功开发了一种简单的电泳沉积(EPD)方法,在碳布(MOSE2 / CC)的碳纤维表面上装饰MOSE2纳米蛋白酶。通过该方法,MOSE2纳米片可以均匀地沉积在该柔性导体上以形成用于氢化反应(她)的3D粘合剂电极。膜厚度也可以通过EPD时间控制。直接用作无粘合剂的电极进行氢进化反应,制备的3D MOSE2 / CC样品在酸性电解质(21mA / cm(2)的过电潜力为250mV时表现出优异的催化活性)。电极中MOSE2纳米片膜厚度的变化可能影响催化活性,发现用60分钟的EPD时间制备的MOSE2 / CC样品显示出这些不同厚度样品中的最高活动。此外,稳定性试验虽然长期电位循环(1000次连续电位循环后没有降解)和延伸电解证实催化剂的卓越耐久性。该开发为我们提供了一种用于电化学水分裂的有吸引力和有源的3D电极。

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